Texas Instruments_CD54HC157F
original

Texas Instruments
CD54HC157F

743-CD54HC157F
PDF Datasheet
High Speed CMOS Logic Quad 2-Input Multiplexers 16-CDIP -55 to 125
18 weeks

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Tech Specifications

Package/Case
CDIP
Contact Plating
Tin, Lead
High Level Output Current
-5.2mA
Lead Free
Contains Lead
Logic Function
Multiplexer, Mux
Low Level Output Current
5.2mA
Max Operating Temperature
125°C
Min Operating Temperature
-55°C
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CD54HC157F Description

CD54HC157F Description

The CD54HC157F is a high-speed CMOS logic IC chip, part of the 54HC series manufactured by Texas Instruments. This device is designed to provide exceptional performance in digital circuits, offering a combination of speed, low power consumption, and reliability. The CD54HC157F is available in bulk packaging and is currently an active product, ensuring its availability for various applications. It is classified under the ECCN code EAR99 and HTSUS code 8542.39.0001, making it suitable for international trade and compliance with export regulations.

CD54HC157F Features

The CD54HC157F is a high-speed CMOS logic multiplexer/demultiplexer designed to handle multiple input signals and selectively route them to a single output line. This IC offers several key features that make it a standout choice in the electronics industry:

  • High-Speed Operation: The CD54HC157F operates at high speeds, making it ideal for applications requiring rapid data processing and signal switching.
  • Low Power Consumption: Despite its high-speed capabilities, this IC maintains low power consumption, which is crucial for energy-efficient designs.
  • Wide Operating Voltage Range: The device operates over a wide voltage range, ensuring compatibility with various power supply configurations.
  • High Noise Immunity: The CD54HC157F is designed to withstand high levels of noise, ensuring reliable operation in noisy environments.
  • Non-inverting Output: The output of the CD54HC157F is non-inverting, simplifying circuit design and reducing the need for additional components.
  • High Input Impedance: The high input impedance of the CD54HC157F minimizes loading effects on the driving circuit, ensuring signal integrity.

CD54HC157F Applications

The CD54HC157F is versatile and can be used in a variety of applications due to its high-speed operation, low power consumption, and reliability. Some specific use cases include:

  • Digital Signal Processing: The high-speed switching capability of the CD54HC157F makes it ideal for digital signal processing applications where rapid signal routing is required.
  • Data Communication Systems: In data communication systems, the CD54HC157F can be used to multiplex and demultiplex data signals, ensuring efficient data transmission.
  • Telecommunications: The device is well-suited for use in telecommunications equipment, where its high-speed and low-power characteristics are beneficial.
  • Automotive Electronics: The CD54HC157F can be used in automotive applications, such as engine control units and infotainment systems, where reliability and performance are critical.
  • Industrial Control Systems: In industrial control systems, the CD54HC157F can be employed to manage and route control signals, enhancing the efficiency and reliability of the system.

Conclusion of CD54HC157F

The CD54HC157F from Texas Instruments is a high-speed CMOS logic multiplexer/demultiplexer that offers a balance of speed, low power consumption, and reliability. Its wide operating voltage range, high noise immunity, and non-inverting output make it a versatile and efficient choice for a variety of applications. Whether used in digital signal processing, data communication systems, telecommunications, automotive electronics, or industrial control systems, the CD54HC157F provides the performance and reliability needed to ensure successful operation.

FAQ

What is the standard lead time for CD54HC157F?
The standard lead time for CD54HC157F is 18 weeks.
What package or case is CD54HC157F available in?
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Availability (In Stock : 75 )
Quantity Unit Price Ext. Price
25+ $10.68320 $267.08
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